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(11) | EP 0 262 809 A1 |
| (12) | EUROPEAN PATENT APPLICATION |
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| (54) | Pyrimidinylphenyl ester compound |
| (57) Pyrimidinylphenyl ester compounds of the general formula:
wherein R* represents an optically active alkyl group having an asymmetric carbon atom, R represents a straight-chain alkyl group or a straight-chain alkoxy group and A represents |
Example 1
2.2 g (0.0099 mol) of (S)-4-(2-methyl)butyryloxybenzoic acid and 3.0 g (0.010 mol) of 2-(4-hydroxy)-phenyl-5-n-octyloxypyrimidine were dissolved in 25 mt of ethyl acetate. 2.3 g (0.011 mol) of N,N'- dicyclohexylcarbodiimide and 0.12 g (0.098 mmol) of 4-dimethylaminopyridine were added to the solution and the mixture was stirred at room temperature for 7 h. After completion of the reaction, the reaction mixture was poured into ice-water and the organic layer was separated. After extraction-with ethyl acetate followed by washing with a 10% aqueous sodium hydroxide solution, then with water and finally with a saturated aqueous common salt solution, the product was dried over magnesium sulfate and concentrated. The obtained product was purified according to silica gel column chromatography and recrystallized from ethanol to obtain 1.7 g of the intended compound.
[α]25D = +9.90° (C=2.19, CHC13)
IRνmax cm-1: 1760, 1740, 1445,1270, 1205, 1160, 1080, 885, 785
'H-NMR (CDCl3, 60 MHz) 5(ppm):
0.67 - 2.13 (m, 25H)
2.33 - 2.90 (m, 1H)
4.07 (t, 2H)
7.21 (d, 2H)
7.29 (d, 2H)
8.23 (d, 2H)
8.37 (s, 2H)
8.42 (d, 2H)
Example 2
1.5 g (0.0068 mol) of (S)-4-(2-methyl)butyryloxybenzoic acid, 2.0 g (0.0067 mol) of
2-(4-hydroxy)phenyl-5-n-octylpyrimidine, 1.5 g (0.0073 mol) of N,N'-dicyclohexylcarbodiimide,
80 mg (0.066 mmol) of 4-dimethylaminopyridine and 20 m of ethyl acetate were reacted
at room temperature for 10 h and then the same procedure as in Example 1 was repeated
to obtain 1.1 g of the intended compound.
IRνmax cm-1: 1760, 1735, 1430, 1270, 1200, 1165, 1075
'H-NMR (GDGl3. 60 MHz) 5(ppm):
0.60 - 1.93 (m, 2H)
2.27 - 2.90 (m, 3H)
7.13 (d,2H)
7.23 (d, 2H)
8.13 (d, 2H)
8.40 (d, 2H)
8.50 (s, 2H)
Example 3
1.6 g (0.0077 mol) of (S)-4-(2-methylbutoxy)benzoic acid and 2.3 g (0.0077 mol) of
2-(4-hydroxy)phenyl-5-n-octylpyrimidine were dissolved in 25 m of ethyl acetate. 1.9
g (0.0092 mol) of N,N'-dicyclohexylcarbodiimide and 90 mg (0.074 mmol) of 4-dimethyl
aminopyridine were added to the solution and the mixture was stirred at room temperature
for 17 h. After completion of the reaction, the reaction mixture was poured into ice-water
and extracted with ethyl acetate. The extract was washed with a 10% aqueous sodium
hydroxide solution, then water and finally with a saturated aqueous common salt solution,
dried over magnesium sulfate and concentrated. The product was purified according
to silica gel column chromatography and then recrystallized from ethanol to obtain
1.3 g of the intended compound.
IRνmax cm-1: 1735, 1610, 1435, 1260, 1200, 1165, 1080, 850, 655
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.63 - 2.17 (m, 24H)
2.58 (t, 2H)
3.82 (d, 2H)
6.89 (d, 2H)
7.26 (d, 2H)
8.03 (d, 2H)
8.41 (d, 2H)
8.52 (s, 2H)
Example 4
The same procedure as in Example 1 was repeated except that 2.2 g (0.0083 mol) of
(S)-4-(2-methylbutoxy)benzoic acid, 2.5 g (0.0083 mol) of 2-(4-hydroxy)phenyl-5-n-octyloxypyrimidine,
25 mℓ of ethyl acetate, 1.9 g (0.0092 mol) of N,N'-dicyclohexylcarbodiimide and 0.1
g (0.00082 mol) of 4-dimethylaminopyridine were used. 2.8 g of the intended compound
was obtained.
lRνmax cm-1: 1740, 1605, 1435, 1280, 1250, 1190, 1170, 1080, 1050
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.50 - 2.16 (m, 24H)
3.78 (d,.2H)
4.03 (t, 2H)
6-87 (d, 2H)
7.27 (d, 2H)
8.07 (d, 2H)
8.32 (d, 2H)
8.35 (s, 2H)
Example 5
2 g (0.0090 mol) of (S)-4-(2-methylbutyryloxy)benzoic acid, 2.4 g (0.0089 mol) of 2-(4-hydroxyphenyl)-5-n-heptylpyrimidine, 2.0 g (0.0097 mol) of N,N-dicyclohexylcarbodiimide and 0.11 g (0.00090 mol) of 4-dimethylaminopyridine were stirred in 30 m £ of ethyl acetate at room temperature for 8 h.
IRνmax Cm-1: 1755, 1740, 1430, 1265, 1190, 1160, 1075
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.67 - 2.03 (m, 18H)
2.33 - 2.80 (m, 3H)
7.11 (d, 2H)
7.21 (d, 2H)
8.12 (d, 2H)
8.38 (d, 2H)
8.48 (s, 2H)
Example 6
0.5g of 4-(1-methylbutoxy) benzoic acid prepared from an optically active L-(-)-2-pentanol by standard methods and 0.721 g of 5-n-octyloxy-2-(4-hydroxyphenyl) pyridine were dissolved in 20ml of dry ethyl acetate, and 0.495g of N-N'-dicyclohexylcarbodiimide and 0.029g of 4-dimethylaminopyridine were added to the solution. The mixture was allowed to react for one whole day at room temperature. After the reaction was completed, the insolube product was filterd out and the resultant product was extracted with ethyl acetate. The organic phase was washed with 2N hydrochloric acid, then, with 2% aqueons sodium hydroxide solution and finally with water and dried, and then the organic solvent was distilled off. The obtained product was subjected to silica gel chromatography and purified by recrystallization, 0.7g of the intended compound was obtained. The compound shows that the optical activity [α]25D was + 8.03 (C, 2.04 in CHCI3).
I.R. v nujolmax (cm-1): 1742, 1610, 1585, 1560, 1528. 1280, 1255, 1210
'H-NMR (CDCl3 int TMS)
(ppm) 8.44 (s, 2H)
8.43 (d, 2H)
8.24 (d, 2H)
729 (d, 2H)
6.94 (d, 2H)
4.60 (t, 2H)
4.49 (m, 1 H)
1.31 (d, 3H)
0.532-16 (m, 22H)
Example 7
Preparation of R-(-)-4-(5-n-octyloxy-2-pyrimidinyl) phenyl 4'-(1-methylhepthyloxy) benzoic acid ester
I.R. νnujolmax (cm-1): 1735, 1610, 1590, 1580, 1555, 1260, 1200, 1075, 1055
H'-NMR (CDCI3)
(ppm): 8.44 (s, 2H)
8.43 (d, 2H)
8.14 (d, 2H)
7.30 (d, 2H)
7.94 (d, 2H)
4.47 (m, 1 H)
4.07 (t, 3H)
1.32 (d, 3H)
0.56-2.1 (m, 28H)
Example 8
1.0 g (0.0045 mol) of (S)-4-(2-methoxybutoxy)benzoic acid and 1.34 g (0.0045 mol)
of 2-(4-hydroxy)-phenyl-5-n-octyloxypyrimidine were dissolved in 30 mℓ of ethyl acetate.
1.1 g (0.0053 mol) of N,N'-dicyclo hexylcarbodiimide and 50 mg (0.041 mmol) of 4-dimethylaminopyridine
were added to the solution and the reaction was conducted at room temperature for
7 h. After completion of the reaction, the reaction mixture was poured into water
and extracted with ethyl acetate. The extract was washed with a 10% aqueous sodium
hydroxide solution, then with water and finally with a saturated aqueous common salt
solution, dried over magnesium sulfate and concentrated. The product was purified
according to silica gel column chromatoaraohv and then recrvstallized from ethanol
to obtain 0.48 a of white crvstals.
IRνmax cm-1: 1740, 1555, 1470, 1250,1100, 1080, 885, 840, 780, 760
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.66 - 2.07 (m, 20H)
3.27 - 3.70 (s, 1 H)
3.43 (s, 3H)
3.90 - 4.23 (m, 4H)
6.93 (d, 2H)
7.27 (d, 2H)
8.10 (d, 2H)
8.37 (d, 2H)
8.40 (s, 2H)
Example 9
0.4 g (0.0018 mol) of (S)-4-(2-methoxy)butoxybenzoic acid, 0.54 g (0.0018 mol) of
2-(4-hydroxy)phenyl-5-n-octylpyrimidine, 10 mℓ of ethyl acetate, 0.41 g (0.002 mol)
of N,N'-dicyclohexylcarbodiimide and 20 mg (0.016 mmol) of 4-dimethylaminopyridine
were reacted at room temperature for 9 h and then the same procedure as in Example
1 was repeated to obtain 0.2 a of white crvstals.
IRνmax cm-1: 1745, 1610, 1430, 1260, 1200, 1165, 1080
'H-NMR (CDCI3, 60 MHz) 5(ppm):
0.70 - 2.00 (m, 20H)
2.80 - 2.43 (m, 2H)
3.33 - 3.67 (m, 1 H)
3.43 (s, 3H, -OCH3)
4.03 (d, 2H)
6.94 (d, 2H)
7.20 (s, 2H)
7.27 (d, 2H)
8.10 (d, 2H)
8.43 (d, 2H)
8.55 (d, 2H)
Example 10
0.5 g (0.0022 mol) of (S)-4-(2-ethoxy)propoxybenzoic acid, 0.67 g (0.0022 mol) of
2-(4-hydroxy)phenyl-5-n-octyloxypyrimidine, 18 m of ethyl acetate, 0.51 g (0.0025
mol) of N,N'-dicyclohexylcarbodiimide and 30 mg (0.025 mmol) of 4-dimethylaminopyridine
were reacted at room temperature for 23 h and then the same procedure as in Example
1 was repeated to obtain 0.3 g of white crystals.
IRνmax cm-1: 1740, 1470, 1450, 1250, 1080, 885, 780, 760
'H-NMR (COCl3, 60 MHz) δ(ppm):
0.50 - 2.13 (m, 21 H)
3.42 - 3.90 (m, 3H)
3.90 - 4.30 (m, 4H)
6.90 (d, 2H)
7.28 (d,2H)
8.13 (d, 2H)
8.41 (d, 2H)
8.42 (s, 2H)
Example 11
Example 12
IR(nujol)ν max, cm-1 = 1780, 1740, 1435, 1270, 1200, 1165
H'-NMR (CDCl3)
(ppm) = 0.50-2.00 (m, 18H)
2.60 (t, 2H)
3.47 (s, 3H)
4.10 (q, 1H)
7.23 (d, 2H)
8.28 (d, 2H)
8.20 (d, 2H)
8.45 (d, 2H)
8.57 (s, 2H)
Example 13
[α]25D =30.2° (C=2, CHCl3)
IR(nujol)νmax, cm-1 = 1780, 1735, 1470, 1440, 1265, 1200
H'-NMR (CDCl3)
(ppm) = 0.63-2.07 (m, 25H)
2.62 (t, 2H)
3.53 (t, 2H)
4.18 (q, 1H)
7.23 (d, 2H)
7.40 (d, 2H)
8.22 (d, 2H)
8.47 (d, 2H)
8.57 (d, 2H)
Example 14
IR(nujol)νmax, cm-1 = 1780, 1750, 1470, 1450, 1275, 1205 H'-NMR (CDCl3)
f(ppm) ; 0.63-2.00 (m, 25H)
3.37-3.80 (m, 2H)
4.08 (t, 2H)
4.18 (q, 1H)
7.23 (d, 2H)
7.30 (d, 2H)
8.25 (d, 2H)
8.42 (d, 2H)
8.43 (s, 2H)
Example 15
Referential Example 1
4.5 g (0.044 mol) of (S)-2-methylbutyric acid and 10 g (0.044 mol) of benzyl 4-hydroxybenzoate were dissolved in 50 ml of ethyl acetate. 10 g (0.049 mol) of N,N'-dicyclohexylcarbodiimide and 0.54 g (0.44 mmol) of 4-dimethylaminopyridine were added to the solution and the mixture was stirred at room temperature for 18 h. After completion of the reaction, the reaction mixture was poured into water. The organic layer was separated, extracted with ethyl acetate and washed with a 10% aqueous sodium hydroxide solution, then with water and finally with a saturated aqueous common salt solution. The product was dried over magnesium sulfate and concentrated. The residue was purified according to silica gel column chromatography to obtain 9.3 g of the intended compound.
IRνmax cm-1: 1760, 1720, 1610, 1510, 1270, 1210, 1180, 1100, 1020, 760, 700
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.82 - 1.42 (m, 6H)
1.42 - 2.02 (m, 2H)
2.33 - 2.80 (m, 1 H)
5.28 (s, 2H)
7.06 (d, 2H)
7.32 (s, 5H)
8.02 (d, 2H)
Referential Example 2
9.0 g (0.029 mol) of benzyl (S)-4-(2-methyl)butyryloxybenzoate and 0.9 g of palladium/carbon were placed in 90 mi of ethanol to conduct catalytic reduction. After 1.5 h, an insoluble matter was tittered out and the filtrate was concentrated to obtain 6.3 g of crude intended compound.
IRνmax Cm-1: 3200 - 2450 (br), 1770, 1680, 1605, 1430, 1320. 1295, 1210, 1165, 1105, 760, 550
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.83 - 1.43 (m, 6H)
1.43 - 2.13 (m, 2H)
2.33 - 2.87 (m, 1H)
7.13 (d, 2H)
8.08 (d, 2H)
10.40 (br, 1 H)
Referential Example 3
5 g (0.036 mol) of 4-hydroxybenzoic acid was dissolved in 30 mt of ethanol. 6 g (0.040 mol) of (S)-2-methylbutyl bromide and 15 mi of a 10% aqueous potassium hydroxide solution were added to the solution and the mixture was refluxed for 5 h. After completion of the reaction, the reaction mixture was acidified with hydrochloric acid to form precipitates. The precipitates were recovered by filtration, washed and dried to obtain 3.1 g of the intended compound.
Referential Example 4
4.32 g of 4-hydroxybenzamidine hydrochloride and 5.7 g of β-dimethylamino-α-n-octyloxyacrolein were dissolved in 40 ml of ethanol. 19.3 g of a 28% solu tion of sodium methylate in methanol was added to the solution and the mixture was refluxed for 8 h. After completion of the reaction, the reaction mixture was poured into ice-water, acidified with a dilute aqueous sulfuric acid solution and extracted with ethyl acetate. The extract was washed with a saturated aqueous sodium hydrogencarbonate solution and then with a saturated aqueous common salt solution and concentrated to obtain 7.1 g of an oily product. It was recrystallized from n-hexane/ethanol to obtain 2.79 g of the intended compound.
IRνmax cm-': 3350 ~ 3050, 1610, 1595, 1435, 1280, 1245, 1175, 790
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.6 - 2.2 (m, 17H)
4.02 (t, 2H)
6.85 (d, 2H)
8.16 (d, 2H)
8.43 (s, 2H)
Referential Example 5
5 g (0.030 mol) of ethyl 4-hydroxybenzoate was added to 1.6 g (0.033 mol) of 50% sodium hydride and 50 ml of dimethylformamide under stirring at room temperature. The mixture was stirred for 30 min. 9.9 g (0.030 mol) of (S)-2-tetrahydropyranyloxybutoxy p-toluenesulfonate was added thereto and the mixture was stirred at 80°C for 10 h. Then, the mixture was poured into ice-water and extracted with ethyl acetate. The extract was washed with a 10% aqueous sodium hydroxide solution and then with a saturated aqueous common salt solution, dried and concentrated to obtain 8.8 g of the crude product.
IRνmax cm-1: 1720,1605, 1515, 1280 - 1250 (br), 1170, 1030, 770
Referential Example 6
8.5 g (0.026 mol) of (S)-ethyl 4-(2-tetrahydropyranyloxy)butoxybenzoate was dissolved in 43 ml of ethanol. 0.2 g (0.0011 mol) of p-toluenesulfonic acid monohydrate was added to the solution and the mixture was refluxed for 3 h. Then, the reaction mixture was concentrated. Water was added thereto. After extraction with ethyl acetate, the extract was washed with water, dried over magnesium sulfate and concentrated. The product was purified according to silica gel column chromatography to obtain 3.4 g of white crystals.
IRνmax cm-1: 3600 - 3200 (br), 1710, 1610, 1515, 1290~1230 (br), 1170, 1100, 85Q, 770
Referential Example 7
2.0 g (0.0084 mol) of (S)-ethyl 4-(2-hydroxy)butoxybenzoate was added to 0.44 g (0.0092 mol) of 50% sodium hydride and 15 ml of tetrahydrofuran under stirring at room temperature. 0.2 g (0.0011 mol) of hexamethylphosphoric triamide was added thereto. The mixture was stirred for 1 h. 1.43 g (0.01 mol) of methyl iodide was added thereto and the mixture was stirred at 40°C for 1.5 h. After completion of the reaction, the reaction mixture was poured into ice-water and extracted with ethyl acetate. The extract was washed with a 10% aqueous sodium hydroxide solution, then with water and finally with a saturated aqueous common salt solution, dried over magnesium sulfate and concentrated to obtain 1.9 g of the crude product.
IRνmax cm-1: 1710, 1605, 1515, 1280, 1250, 1170, 1100, 850, 770
Referential Example 8
1.9 g (0.0075 mol) of S-ethyl 4-(2-methoxy)butoxybenzoate was dissolved in 10 m of ethanol. 5 ml of a 10% aqueous sodium hydroxide solution was added to the solution. The mixture was stirred for 30 min, acidified with hydrochloric acid and extracted with ethyl acetate. The extract was washed with an aqueous sodium hydrogencarbonate solution, dried over magnesium sulfate and concentrated to obtain 1.9 g of an oily product. n-Hexane was added to the product to form crystals, which were filtered, washed with n-hexane and dried to obtain 1.2 g of the intended compound.
IRYνmax cm-1: 3100 - 2500, 1680,1605, 1430, 1300, 1255, 850, 770, 640
'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.87 - 1.37 (m, 3H)
1.37 - 1.93 (m, 2H)
3.27 - 3.63 (m, 1 H)
3.43 (s, 3H)
4.00 (d, 2H)
6.87 (d, 2H)
7.97 (d, 2H)
9.87 (br, 1 H)
Referential Example 9
1.0 g (0.021 mol) of 50% sodium hydride, 25 ml of dimethylformamide, 3.2 g (0.019 mol) of ethyl 4-hydroxybenzoate and 6.1 g (0.019 mol) of (S)-2-tetrahydropyranyloxypropoxy p-toluenesulfonate were reacted at 60°C for 8 h. Then the same procedure as in Referential Example 1 was repeated to obtain 5.0 g of the crude product.
IRνmax cm-1: 1715, 1610, 1280, 1255, 1170, 1120, 1035, 770
Referential Example 10
A mixture of 4.5 g (0.014 mol) of (S)-ethyl 4-(2-tetrahydropyranyloxy)propoxybenzoate, 0.2 g (0.0011 mol) of p-toluenesulfonic acid monohydrate and 45 ml of methanol were refluxed for 1 h. Then the same procedure as in Referential Example 2 was repeated to obtain 2.2 g of the crude product.
IRνmax cm-': 3600 - 3200 (br), 1710 (br), 1610, 1515, 1300 - 1220 (br), 1170, 1100, 1030, 770
Referential Example 11
2.2 g (0.0098 mol) of (S)-ethyl 4-(2-hydroxy)propoxybenzoate and 0.2 g (0.0011 mol)
of hexamethylphosphoric triamide were added to a mixture of 0.52 g (0.011 mol) of
50% sodium hydride and 15 m of tetrahydrofuran under stirring. After 1 h, 1.8 g (0.012
mol) of methyl iodide was added thereto and the mixture was refluxed for 2 h. Then
the mixture was poured into ice-water and extracted with ethyl acetate. The extract
was washed with a 10% aqueous sodium hydroxide solution and then with a saturated
aqueous common salt solution, dried over magnesium sulfate and concentrated. 20 m
of ethanol was added thereto to obtain a solution. The solution was refluxed together
with a 10% aqueous sodium hydroxide solution for 1 h to conduct hydrolysis. After
completion of the hydrolysis, the reaction mixture was poured into ice-water and extracted
with ethyl acetate. After the same procedure as that described above, 1.4 g of an
oily product was obtained. The product was purified according to silica gel column
chromatography to obtain 0.76 g of the product.
IRνmax cm-1: 3300 - 2400 (br), 1690, 1610, 1460, 1250, 1170, 850, 770 'H-NMR (CDCl3, 60 MHz) δ(ppm):
0.70 - 1.90 (m, 6H)
3.40 - 4.23 (m, 5H)
6.90 (d, 2H)
8.03 (d, 2H)
11.70 (br, 1 H)